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首页> 外文期刊>Engineering Fracture Mechanics >A numerical investigation on multiaxial fatigue assessment of Nitinol peripheral endovascular devices with emphasis on load non-proportionality effects
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A numerical investigation on multiaxial fatigue assessment of Nitinol peripheral endovascular devices with emphasis on load non-proportionality effects

机译:强调负荷非比例效应的镍钛烯醇周围血管内装置多轴疲劳评估的数值研究

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摘要

This work first numerically investigates on the effect of the application of cyclic remote loads on the local stress/strain response of a peripheral stent. For this purpose, three stents of identical geometry, but different material properties (linear elastic, elastic-plastic and Nitinol material), were modelled and subjected to uniaxial and multiaxial proportional cyclic loads. The local response under uniaxial loads is non-proportional only for the case of Nitinol stent, while it happens for all the materials when multiaxial loads are applied. This paper also aims to evaluate how the use of different multiaxial fatigue criteria may affect the fatigue assessment for Nitinol peripheral stents. The same stent model was subjected to different proportional and non-proportional multiaxial cyclic loads and the results were interpreted using the standard von Mises and three approaches based on the concept of critical plane. The results showed that the von Mises is the most conservative criterion.
机译:这项工作首先在数值上研究了循环远程负载在外周支架的局部应力/应变响应上的应用的影响。为此目的,建模并对单轴和多轴比例循环负载进行建模并进行不同材料性质(线性弹性,弹性塑料和镍钛矿)的三个等距。单轴载荷下的局部反应仅为镍钛诺支架的情况而非比例,而当施加多轴载荷时,它会发生所有材料。本文还旨在评估不同多轴疲劳标准的使用如何影响镍钛烯醇周支架的疲劳评估。对相同的支架模型进行不同的比例和非比例的多轴循环载荷,并且使用标准的vonmes和基于临界平面概念的三种方法来解释结果。结果表明,Von Mises是最保守的标准。

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